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Carbon arc production of heptagon-containing fullerene[68]

机译:含有七边形富勒烯的碳弧生产[68]

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A carbon heptagon ring is a key unit responsible for structural defects in sp2-hybrized carbon allotropes including fullerenes, carbon nanotubes and graphenes, with consequential influences on their mechanical, electronic and magnetic properties. Previous evidence concerning the existence of heptagons in fullerenes has been obtained only in off-line halogenation experiments through top-down detachment of a C2 unit from a stable fullerene. Here we report a heptagon-incorporating fullerene C68, tentatively named as heptafullerene[68], which is captured as C68Cl6 from a carbon arc plasma in situ. The occurrence of heptagons in fullerenes is rationalized by heptagon-related strain relief and temperature-dependent stability. 13C-labelled experiments and mass/energy conservation equation simulations show that heptafullerene[68] grows together with other fullerenes in a bottom-up fashion in the arc zone. This work extends fullerene research into numerous topologically possible, heptagon-incorporating isomers and provides clues to an understanding of the heptagon-involved growth mechanism and heptagon-dependent properties of fullerenes.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:碳七边形环是负责sp2杂化碳同素异形体(包括富勒烯,碳纳米管和石墨烯)中结构缺陷的关键单元,因此会对它们的机械,电子和磁性能产生影响。仅在离线卤化实验中,通过从稳定的富勒烯自上而下分离C 2 单元,才获得了有关富勒烯中七边形存在的先前证据。在这里,我们报告了一个掺有七氟烷的富勒烯C 68 ,临时命名为七富勒烯[68],该碳被捕获为C 68 Cl 6 碳弧原位等离子体。富勒烯中七边形的存在通过与七边形相关的应变消除和温度依赖性稳定性来合理化。 13 C标记的实验和质量/能量守恒方程模拟表明,庚富勒烯[68]与其他富勒烯一起在弧区以自下而上的方式生长。这项工作将富勒烯的研究扩展到许多可能掺入七方体的拓扑异构体中,并为了解富勒烯的涉及七方体的生长机理和依赖七方体的性质提供了线索。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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